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Pillow, J. N. G., Halim, M., Lupton, J. M., Burn, P. L. and Samuel, I. D. W. (1999) A facile iterative procedure for the preparation of dendrimers containing luminescent cores and stilbene dendrons. Macromolecules, 32 19: 5985-5993. doi:10.1021/ma981871k 43   114 Cited 4 times in Scopus4 0
Ribierre, J. C., Tsiminis, G., Richardson, S., Turnbull, G. A., Samuel, I. D. W., Barcena, H. and Burn, P. (2007) Amplified spontaneous emission and lasing properties of bisfluorene-cored dendrimers. Applied Physics Letters, 91 8: 081108-1-081108-3. doi:10.1063/1.2761833 127   30 Cited 32 times in Scopus32 0
Behrends, J., Schnegg, A., Lips, K., Thomsen, E. A., Pandey, A. K., Samuel, I. D. W. and Keeble, D. J. (2010) Bipolaron formation in organic solar cells observed by pulsed electrically detected magnetic resonance. Physical Review Letters, 105 17: 176601-1-176601-4. doi:10.1103/PhysRevLett.105.176601 57 6 29 Cited 31 times in Scopus31 0
Lo, S. C., Shipley, C. P., Bera, R. N., Harding, R. E., Cowley, A. R., Burn, P. L. and Samuel, I. D. W. (2006) Blue phosphorescence from iridium(III) complexes at room temperature. Chemistry of Materials, 18 21: 5119-5129. doi:10.1021/cm061173b 150   124 Cited 126 times in Scopus126 0
Ma, Dongge Ma, Lupton, J. M., Samuel, I. D. W., Lo, Shi-Chun and Burn, P. L. (2002) Bright electroluminescence from a conjugated dendrimer. Applied Physics Letters, 81 12: 2285-2287. doi:10.1063/1.1507826 76   31 Cited 35 times in Scopus35 0
Ma, Dongge, Hu, Yufeng, Zhang, Yanguang, Wang, Lixiang, Jing, Xiabing, Wang, Fosong, Lupton, J. M., Samuel, I. D. W., Lo, Shi-Chun and Burn, P. L. (2003). Bright electroluminescence from a new conjugated dendrimer. In: C.Q. Wu, Y. Cao, X. Sun and D.B. Zhu, Synthetic Metals: Proceedings of the International Conference on Science and Technology of Synthetic Metals. International Conference on Science and Technology of Synthetic Metals, Shanghai, China, (1125-1126). 29 June - 5 July 2002. doi:10.1016/S0379-6779(02)00954-2 63   11 Cited 11 times in Scopus11 0
Brancaleon, L., Magennis, S. W., Samuel, I. D. W., Namdas, E., Lesar, A. and Moseley, H. (2004) Characterization of the photoproducts of protoporphyrin IX bound to human serum albumin and immunoglobulin G. Biophysical Chemistry, 109 3: 351-360. doi:10.1016/j.bpc.2003.12.008 28   28 Cited 28 times in Scopus28 0
Lupton, J. M., Samuel, I. D. W., Beavington, R., Burn, P. L. and Bassler, H. (2001) Charge transport in conjugated dendrimers for light-emitting diodes. Synthetic Metals, 121 1-3: 1703-1704. doi:10.1016/S0379-6779(00)01228-5 73   9 Cited 10 times in Scopus10 0
Markham, J. P. J., Samuel, I. D. W., Lo, S. C., Burn, P. L., Weiter, M. and Bassler, H. (2004) Charge transport in highly efficient iridium cored electrophosphorescent dendrimers. Journal of Applied Physics, 95 2: 438-445. doi:10.1063/1.1633336 78   59 Cited 60 times in Scopus60 0
Richardson, S., Barcena, H. S., Turnbull, G. A., Burn, P. L. and Samuel, I. D. W. (2009) Chemosensing of 1,4-dinitrobenzene using bisfluorene dendrimer distributed feedback lasers. Applied Physics Letters, 95 6: 063305-1-063305-3. doi:10.1063/1.3189286 73   25 Cited 28 times in Scopus28 0
Lo, Shih-Chun, Sheridan, Anna K., Samuel, I. D. W. and Burn, Paul L. (2000) Comparison of precursor polymer routes to and electronic properties of a new phenylacetylene derivatised poly[2-(2'-ethylhexyloxy)-1,4-phenylenevinylene]. Journal of Materials Chemistry, 10 2: 275-281. doi:10.1039/a904274a 59   4 Cited 6 times in Scopus6 0
Grage, M. M. L., Wood, P. W., Ruseckas, A., Pullerits, T., Mitchell, W., Burn, P. L., Samuel, I. D. W. and Sundstrom, V. (2003) Conformational disorder and energy migration in MEH-PPV with partially broken conjugation. Journal of Chemical Physics, 118 16: 7644-7650. doi:10.1063/1.1562190 116   66 Cited 67 times in Scopus67 0
Markham, Jonathan P. J., Anthopoulos, Thomas D., Namdas, Ebinazar B., Lo, Shih-Chun, Richards, Gary J., Frampton, Michael J., Salata, Olga, Burn, Paul L. and Samuel, I. D. W. (2004). Conjugated dendrimers: A modular approach to materials for full colour displays. In: Proceedings of the Society of Photo-Optical Instrumentation Engineers (SPIE). Conference on Organic Light-Emitting Materials and Devices VII, San Diego, CA, United States, (50-56). 4-6 August 2003. doi:10.1117/12.512062 57   1 Cited 1 times in Scopus1 0
Halim, M., Samuel, I. D. W., Pillow, J. N. G. and Burn, P. L. (1999). Conjugated dendrimers for LEDs: Control of colour. In: International Conference on Science and Technology of Synthetic Metals (ICSM 98), Montpellier, France, (1113-1114). 12-18 July 1998. doi:10.1016/S0379-6779(98)01396-4 16   51 Cited 55 times in Scopus55 0
Halim, M., Pillow, J. N. G., Samuel, I. D. W. and Burn, P. L. (1999) Conjugated dendrimers for light-emitting diodes: Effect of generation. Advanced Materials, 11 5: 371-374. doi:10.1002/(SICI)1521-4095(199903)11:5<371::AID-ADMA371>3.0.CO;2-1 27   237 Cited 248 times in Scopus248 0
Lupton, J. M., Samuel, I. D. W., Beavington, R., Burn, P. L. and Bassler, H. (2001) Control of charge transport and intermolecular interaction in organic light-emitting diodes by dendrimer generation. Advanced Materials, 13 4: 258-261. doi:10.1002/1521-4095(200102)13:4<258::AID-ADMA258>3.0.CO;2-9 67   142 Cited 142 times in Scopus142 0
Halim, M., Samuel, I. D. W., Pillow, J. N. G., Monkman, A. P. and Burn, P. L. (1999). Control of colour and charge injection in conjugated dendrimer polypyridine bilayer LEDs. In: International Conference on Science and Technology of Synthetic Metals (ICSM 98), Montpellier, France, (1571-1574). 12-18 July 1998. doi:10.1016/S0379-6779(98)00363-4 23   28 Cited 27 times in Scopus27 0
Lupton, J. M., Samuel, I. D. W., Frampton, M. J., Beavington, R. and Burn, P. L. (2001) Control of electrophosphorescence in conjugated dendrimer light-emitting diodes. Advanced Functional Materials, 11 4: 287-294. doi:10.1002/1616-3028(200108)11:4<287::AID-ADFM287>3.0.CO;2-Z 81   78 Cited 83 times in Scopus83 0
Lupton, J. M., Samuel, I. D. W., Burn, P. L. and Mukamel, S. (2002) Control of intrachromophore excitonic coherence in electroluminescent conjugated dendrimers. Journal of Physical Chemistry B, 106 31: 7647-7653. doi:10.1021/jp020418e 69   46 Cited 49 times in Scopus49 0
Lupton, J. M., Samuel, I. D. W., Beavington, R., Frampton, M. J., Burn, P. L. and Bassler, H. (2001) Control of mobility in molecular organic semiconductors by dendrimer generation. Physical review. B, Condensed matter and materials physics, 63 15: 155206-1-155206-8. doi:10.1103/PhysRevB.63.155206 101   84 0
Stevenson, S. G., Samuel, I. D. W., Staton, S. V,, Knights, K. A., Burn, P. L., Williams, J. H. T. and Walker, A. B. (2010) Current-voltage characteristics of dendrimer light-emitting diodes. Journal of Physics D: Applied Physics, 43 38: 385106-1-385106-8. doi:10.1088/0022-3727/43/38/385106 51   3 Cited 1 times in Scopus1 0
de Souza, M. M., Rumbles, G., Russell, D. L., Samuel, I. D. W., Moratti, S. C., Holmes, A. B. and Burn, P. L. (2001) Cyano-substituted model compounds and conjugated polymers of PPV. Synthetic Metals, 119 1-3: 635-636. doi:10.1016/S0379-6779(00)00890-0 70   10 Cited 12 times in Scopus12 0
Anthopoulos, T. D., Namdas, E. B., Ruseckas, A., Samuel, I. D. W., Lo, S. C. and Burn, P. L. (2005). Dendrimers: Efficient solution-processed phosphorescent OLED materials. In: Proceedings of the 25th International Display Research Conference. 25th International Display Research Conference, Edinburgh, Scotland, (4-7). 19-22 September 2005. 449   0
Jansen van Vuuren, R., Johnstone, K. D., Ratnasingam, S., Barcena, H., Deakin, P. C., Pandey, A. K., Burn, P. L., Collins, S. and Samuel, I. D. W. (2010) Determining the absorption tolerance of single chromophore photodiodes for machine vision. Applied Physics Letters, 96 25: 253303-1-253303-3. doi:10.1063/1.3456374 77   3 Cited 7 times in Scopus7 0
Burn, P. L., Halim, M., Pillow, J. N. G. and Samuel, I. D. W. (1999). Effect of generation on the electronic properties of light-emitting dendrimers. In: Organic Light-Emitting Materials and Devices III. Conference on Organic Light-Emitting Materials and Devices III, Denver, CO United States, (66-74). 19-21 July 1999. doi:10.1117/12.372741 21   2 Cited 4 times in Scopus4 0
Ribierre, J. C., Yates, C. J., Ruseckas, A., Staton, S. V., Burn, P. L. and Samuel, I. D. W. (2010) Effects of solution processing and thermal annealing on the phosphorescence of iridium(III) complex-cored dendrimer films. Organic Electronics, 11 1: 62-66. doi:10.1016/j.orgel.2009.09.027 55   2 Cited 2 times in Scopus2 0
Ribierre, J.C., Ruseckas, A., Gaudin, O.P.M., Samuel, I.D.W., Barcena, H., Staton, S.V. and Burn, P.L. (2009) Effects of thermal annealing on the photophysical properties of bisfluorene-cored dendrimer films. Organic Electronics, 10 5: 803-808. doi:10.1016/j.orgel.2009.03.018 68   7 Cited 7 times in Scopus7 0
Gambino, S., Samuel, I. D. W., Barcena, H. and Burn, P. L. (2008) Electric field and temperature dependence of the hole mobility in a bis-fluorene cored dendrimer. Organic Electronics, 9 2: 220-226. doi:10.1016/j.orgel.2007.11.002 98   19 Cited 18 times in Scopus18 0
Lupton, J. M., Hemingway, L. R., Samuel, I. D. W. and Burn, P. L. (2000) Electroluminescence from a new distyrylbenzene based triazine dendrimer. Journal of Materials Chemistry, 10 4: 867-871. doi:10.1039/a908816d 26   70 Cited 69 times in Scopus69 0
Shaw, P. E., Lewis, A. J., Ruseckas, A. and Samuel, I. D. W. (2006). Exciton annihilation and diffusion in semiconducting polymers. In: Organic Photovoltaics VII. Conference on Organic Photovoltaics VII, San Diego, CA, United States, (U63-U70). 15-17 August 2006. doi:10.1117/12.681573 45   0 Cited 3 times in Scopus3 0
Lupton, J. M., Samuel, I. D. W., Burn, P. L. and Mukamel, S. (2002) Exciton confinement in organic dendrimer quantum wells for opto-electronic applications. Journal of Chemical Physics, 116 2: 455-459. doi:10.1063/1.1431542 75   24 Cited 27 times in Scopus27 0
Samuel, I. D. W., Raksi, F., Bradley, D. D. C., Friend, R. H., Burn, P. L., Holmes, A. B., Murata, H., Tsutsui, T. and Saito, S. (1993). Femtosecond transient absorption measurements in poly(arylenevinylene)s. In: International Conference on Science and Technology of Synthetic Metals, Goteborg Sweden, (15-21). 12-18 August 1992. doi:10.1016/0379-6779(93)90903-A 29   31 Cited 32 times in Scopus32 0
Lo, S. C., Male, N. A. H., Markham, J. P. J., Magennis, S. W., Burn, P. L., Salata, O V. and Samuel, I. D. W. (2002) Green phosphorescent dendrimer for light-emitting diodes. Advanced Materials, 14 13-14: 975-979. doi:10.1002/1521-4095(20020705)14:13/14<975::AID-ADMA975>3.0.CO;2-D 96   261 0
Markham, J. P. J., Lo, S. C., Magennis, S. W., Burn, P. L. and Samuel, I. D. W. (2002) High-efficiency green phosphorescence from spin-coated single-layer dendrimer light-emitting diodes. Applied Physics Letters, 80 15: 2645-2647. doi:10.1063/1.1469218 97   181 Cited 187 times in Scopus187 0
Bera, Raghu N., Cumpstey, Neil, Burn, Paul L. and Samuel, I. D. W. (2007) Highly Branched Phosphorescent Dendrimers for Efficient Solution-Processed Organic Light-Emitting Diodes. Advanced Functional Materials, 17 7: 1149-1152. doi:10.1002/adfm.200600118 64   55 Cited 60 times in Scopus60 0
Levell, J. W., Zhang, S., Lai, W. -Y., Lo, S. -C., Burn, P. L. and Samuel, I. D. W. (2012) High power efficiency phosphorescent poly(dendrimer) OLEDs. Optics Express, 20 S2: A213-A218. doi:10.1364/OE.20.00A213 71 1 5 Cited 5 times in Scopus5 0
Dongge, M., Lupton, J. M., Beavington, R., Burn, P. L. and Samuel, I. D. W. (2002) Improvement of luminescence efficiency by electrical annealing in single-layer organic light-emitting diodes based on a conjugated dendrimer. Journal of Physics D-applied Physics, 35 6: 520-523. doi:10.1088/0022-3727/35/6/305 107   11 Cited 14 times in Scopus14 0
Ribierre, J. C., Ruseckas, A., Samuel, I. D. W., Barcena, H. S. and Burn, P. L. (2008) Influence of the dendron chemical structure on the photophysical properties of bisfluorene-cored dendrimers. Journal of Chemical Physics, 128 20: Article Number: 204703. doi:10.1063/1.2919567 42   12 Cited 15 times in Scopus15 0
Wood, P., Samuel, I. D. W., Webster, G. R. and Burn, P. L. (2001) Investigating the effect of conjugation in MEH-PPV. Synthetic Metals, 119 1-3: 571-572. doi:10.1016/S0379-6779(00)01233-9 64   11 Cited 13 times in Scopus13 0
Cumpstey, N., Bera, R. N., Burn, P. L. and Samuel, I. D. W. (2005) Investigating the effect of steric crowding in phosphorescent dendrimers. Macromolecules, 38 23: 9564-9570. doi:10.1021/ma050609q 67   32 Cited 34 times in Scopus34 0
Varnavski, O., Samuel, I. D. W., Palsson, L. O., Beavington, R., Burn, P. L. and Goodson, T. (2002) Investigations of excitation energy transfer and intramolecular interactions in a nitrogen corded distrylbenzene dendrimer system. Journal of Chemical Physics, 116 20: 8893-8903. doi:10.1063/1.1471241 57   82 Cited 84 times in Scopus84 0
Vickers, S. V., Barcena, H., Knights, K. A., Thomas, R. K., Ribierre, J.-C., Gambino, S., Samuel, I. D. W., Burn, P. L. and Fragneto, Giovanna (2010) Light-emitting dendrimer film morphology: A neutron reflectivity study. Applied Physics Letters, 96 26: 263302-1-263302-3. doi:10.1063/1.3457438 50   8 Cited 6 times in Scopus6 0
Gunning, J.P., Knights, K.A., Ribierre, J.-C., Harding, R.E., Levell, J.W., Burn, P.L. and Samuel, I.D.W. (2008). Light-emitting poly(dendrimers). In: So, F. and Adachi, C., Proceedings of SPIE Vol. 7051. Organic Light Emitting Materials and Devices XII, San Diego, CA, USA, (70511X1-70511X10). August, 2008. doi:10.1117/12.800083 41   2 Cited 0 times in Scopus0 0
Lupton, J. M., Samuel, I. D. W., Beavington, R., Burn, P. L. and Bassler, H. (2001) Nanoengineering of organic semiconductors for light-emitting diodes: control of charge transport. Synthetic Metals, 116 1-3: 357-362. doi:10.1016/S0379-6779(00)00437-9 62   21 Cited 22 times in Scopus22 0
Tsiminis, G., Ribierre, J.-C., Ruseckas, A., Richards, G. J., Burn, P. L., Turnbull, G. A. and Samuel, I. D. W. (2012). Nanosecond two-photon absorption and lasing in fluorene-based organic semiconductors. In: Isabelle Ledoux and Francois Kajzar, Papers Presented at the International Conference AMARIS’10. AMARIS’10 International Conference. Advances in Molecular Nonlinear Optics: Information Technology and Life Sciences, Cachan, France, (227-238). 24–28 May, 2010. 38   Cited 0 times in Scopus0
Webster, G. R., Mitchell, W. J., Burn, P. L., Thomas, R. K., Fragneto, G., Markham, J. P. J. and Samuel, I. D. W. (2002) Neutron reflection study on soluble and insoluble poly[2-(2 '-ethylhexyloxy)-5-methoxy-1,4-phenylenevinylene) films. Journal of Applied Physics, 91 11: 9066-9071. doi:10.1063/1.1468902 56   11 Cited 13 times in Scopus13 0
Markham, J. P. J., Anthopoulos, T. D., Samuel, I. D. W., Richards, G. J., Burn, P. L., Im, C. and Bassler, H. (2002) Nondispersive hole transport in a spin-coated dendrimer film measured by the charge-generation-layer time-of-flight method. Applied Physics Letters, 81 17: 3266-3268. doi:10.1063/1.1514400 71   23 Cited 27 times in Scopus27 0
Ma, D. G., Lupton, J. M., Beavington, R., Burn, P. L. and Samuel, I. D. W. (2002) Novel heterolayer organic light-emitting diodes based on a conjugated dendrimer. Advanced Functional Materials, 12 8: 507-511. doi:10.1002/1616-3028(20020805)12:8<507::AID-ADFM507>3.0.CO;2-W 80   56 Cited 58 times in Scopus58 0
Lawrence, J. R., Turnbull, G. A., Samuel, I. D. W., Richards, G. J. and Burn, P. L. (2004) Optical amplification in a first-generation dendritic organic semiconductor. Optics Letters, 29 8: 869-871. doi:10.1364/OL.29.000869 69   23 Cited 25 times in Scopus25 0
Ribierre, J.-C., Stevenson, S. G., Samuel, I. D. W., Staton, S. V. and Burn, P. L. (2007) Optimization of the Luminescence Efficiencies in Solution-Processed Phosphorescent Dendrimers. IEEE Journal of Display Technology, 3 2: 233-237. doi:10.1109/JDT.2007.896744 60   10 Cited 10 times in Scopus10 0

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